Details of the Researcher

PHOTO

Natsumi Kishida
Section
Graduate School of Life Sciences
Job title

Research History 4

  • 2024/04 - Present
    東北大学大学院生命科学研究科 特任研究員(日本学術振興会特別研究員RPD)

  • 2023/04 - 2024/03
    Tohoku University Graduate School of Life Sciences Technician

  • 2022/06 - 2023/01
    UTHealth Research Associate

  • 2018/04 - 2021/12
    Miyagi Prefectural Furukawa Agricultural Experiment Station

Education 3

  • Tohoku University Graduate School of Life Sciences

    2015/04 - 2018/03

  • Tohoku University Graduate School of Life Sciences

    2013/04 - 2015/03

  • Iwate University Faculty of Agriculture Biological Chemistry and Food Science

    2009/04 - 2013/03

Research Interests 4

  • 微生物間相互作用

  • 環境浄化

  • 微生物分解

  • 環境汚染物質

Research Areas 1

  • Life sciences / Applied microbiology /

Awards 1

  1. 生命科学研究科長賞

    2015/03 東北大学

Papers 10

  1. Type I partition-related proteins enhance conjugative transfer through transcriptional activation andoriTregion binding

    Kouhei Kishida, Koji Kudo, Ren Kumagai, Wenhao Deng, Leonardo Stari, Natsumi Ogawa-Kishida, Yoshiyuki Ohtsubo, Yuji Nagata, Masataka Tsuda

    2025/01/22

    Publisher: Cold Spring Harbor Laboratory

    DOI: 10.1101/2025.01.22.634284  

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    ABSTRACT Plasmid partitioning and bacterial conjugation are critical processes ensuring plasmid maintenance and dissemination, respectively, within bacterial populations. Although traditionally regarded as distinct phenomena, these two processes are increasingly recognized as interconnected. While partitioning ensures plasmid inheritance during cell division, its potential influence on conjugative transfer remains poorly understood. A major impediment to understanding their interplay is that partition systems are often essential for plasmid stability, making it difficult to distinguish their direct effects on conjugation. In this study, we addressed this challenge using a mini-conjugative plasmid derived from thePseudomonas putidaNAH7 plasmid. This engineered plasmid, containing all conjugation-related genes, was cloned into anE. coli-compatible vector. Additionally, thepargenes from NAH7 were expressed from a separate plasmid to investigate their roles in conjugative transfer. Our results revealed that thepargene cluster plays a significant role in enhancing the conjugative transfer of the mini-conjugative plasmid. Specifically, ParB, a centromere-binding protein, functions as a transcriptional activator of conjugation-related genes with bindingparSNAHsite. In contrast, ParR, a KorA homolog, was not found to enhance transcription directly but binds extensively to theoriTregion. This binding probably facilitates the recruitment or stabilization of the relaxosome, thereby enhancing conjugation efficiency. Together, these findings unveil a previously unappreciated role for partition proteins in stimulating bacterial conjugation, providing new insights into how plasmids coordinate vertical and horizontal dissemination, highlighting that these processes can occur simultaneously within bacterial communities. IMPORTANCE Plasmid partition systems are classified into three types. While some systems have been reported to influence conjugative transfer, this study uncovers a novel mechanism utilized by a Type I system to enhance DNA transfer. Strikingly, repeat sequences perfectly matching theparSNAHsite—bound by ParB to activate downstream conjugative transfer genes—were identified on both plasmids and chromosomes across diverse proteobacterial taxa. Furthermore, many of these repeat sequences were localized near genes involved in conjugative transfer and partitioning, suggesting the presence of a conserved regulatory mechanism mediated by these repeats. This study provides important insights into how plasmid partition systems coordinate both vertical and horizontal dissemination. Such knowledge is essential for understanding and mitigating the spread of antibiotic resistance and other plasmid-encoded traits, and it offers a foundation for developing strategies to manage plasmid-associated genetic exchange.

  2. Increase of secondary metabolites in sweet basil (Ocimum basilicum L.) leaves by exposure to N2O5 with plasma technology Peer-reviewed

    Rie Tateishi, Natsumi Ogawa-Kishida, Nobuharu Fujii, Yuji Nagata, Yoshiyuki Ohtsubo, Shota Sasaki, Keisuke Takashima, Toshiro Kaneko, Atsushi Higashitani

    Scientific Reports 14 (1) 2024/06/04

    Publisher: Springer Science and Business Media LLC

    DOI: 10.1038/s41598-024-63508-8  

    eISSN: 2045-2322

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    Abstract Exposure to N2O5 generated by plasma technology activates immunity in Arabidopsis through tryptophan metabolites. However, little is known about the effects of N2O5 exposure on other plant species. Sweet basil synthesizes many valuable secondary metabolites in its leaves. Therefore, metabolomic analyses were performed at three different exposure levels [9.7 (Ex1), 19.4 (Ex2) and 29.1 (Ex3) μmol] to assess the effects of N2O5 on basil leaves. As a result, cinnamaldehyde and phenolic acids increased with increasing doses. Certain flavonoids, columbianetin, and caryophyllene oxide increased with lower Ex1 exposure, cineole and methyl eugenol increased with moderate Ex2 exposure and l-glutathione GSH also increased with higher Ex3 exposure. Furthermore, gene expression analysis by quantitative RT-PCR showed that certain genes involved in the syntheses of secondary metabolites and jasmonic acid were significantly up-regulated early after N2O5 exposure. These results suggest that N2O5 exposure increases several valuable secondary metabolites in sweet basil leaves via plant defense responses in a controllable system.

  3. Chimeric systems composed of swapped Tra subunits between distantly-related F plasmids reveal striking plasticity among type IV secretion machines Peer-reviewed

    Kouhei Kishida, Yang Grace Li, Natsumi Ogawa-Kishida, Pratick Khara, Abu Amar M. Al Mamun, Rachel E. Bosserman, Peter J. Christie

    PLOS Genetics 20 (3) e1011088-e1011088 2024/03/04

    Publisher: Public Library of Science (PLoS)

    DOI: 10.1371/journal.pgen.1011088  

    eISSN: 1553-7404

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    Bacterial type IV secretion systems (T4SSs) are a versatile family of macromolecular translocators, collectively able to recruit diverse DNA and protein substrates and deliver them to a wide range of cell types. Presently, there is little understanding of how T4SSs recognize substrate repertoires and form productive contacts with specific target cells. Although T4SSs are composed of a number of conserved subunits and adopt certain conserved structural features, they also display considerable compositional and structural diversity. Here, we explored the structural bases underlying the functional versatility of T4SSs through systematic deletion and subunit swapping between two conjugation systems encoded by the distantly-related IncF plasmids, pED208 and F. We identified several regions of intrinsic flexibility among the encoded T4SSs, as evidenced by partial or complete functionality of chimeric machines. Swapping of VirD4-like TraD type IV coupling proteins (T4CPs) yielded functional chimeras, indicative of relaxed specificity at the substrate—TraD and TraD—T4SS interfaces. Through mutational analyses, we further delineated domains of the TraD T4CPs contributing to recruitment of cognate vs heterologous DNA substrates. Remarkably, swaps of components comprising the outer membrane core complexes, a few F-specific subunits, or the TraA pilins supported DNA transfer in the absence of detectable pilus production. Among sequenced enterobacterial species in the NCBI database, we identified many strains that harbor two or more F-like plasmids and many F plasmids lacking one or more T4SS components required for self-transfer. We confirmed that host cells carrying co-resident, non-selftransmissible variants of pED208 and F elaborate chimeric T4SSs, as evidenced by transmission of both plasmids. We propose that T4SS plasticity enables the facile assembly of functional chimeras, and this intrinsic flexibility at the structural level can account for functional diversification of this superfamily over evolutionary time and, on a more immediate time-scale, to proliferation of transfer-defective MGEs in nature.

  4. Ligand-displaying Escherichia coli cells and minicells for programmable delivery of toxic payloads via type IV secretion systems Peer-reviewed

    Yang Grace Li, Kouhei Kishida, Natsumi Ogawa-Kishida, Peter J. Christie

    mBio 2023/09/29

    Publisher: American Society for Microbiology

    DOI: 10.1128/mbio.02143-23  

    eISSN: 2150-7511

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    ABSTRACT Bacterial type IV secretion systems (T4SSs) are highly versatile macromolecular translocators and offer great potential for deployment as delivery systems for therapeutic intervention. One major T4SS subfamily, the conjugation machines, are well-adapted for delivery of DNA cargoes of interest to other bacteria or eukaryotic cells but generally exhibit modest transfer frequencies and lack specificity for target cells. Here, we tested the efficacy of a surface-displayed nanobody/antigen (Nb/Ag) pairing system to enhance the conjugative transfer of IncN (pKM101), IncF (F/pOX38), or IncP (RP4) plasmids, or of mobilizable plasmids including those encoding CRISPR/Cas9 systems (pCrispr), to targeted recipient cells. Escherichia coli donors displaying Nbs transferred plasmids to E. coli and Pseudomonas aeruginosa recipients displaying the cognate Ags at significantly higher frequencies than recipients lacking Ags. Nb/Ag pairing functionally substituted for the surface adhesin activities of F-encoded TraN and pKM101-encoded Pep, although not conjugative pili or VirB5-like adhesins. Nb/Ag pairing further elevated the killing effects accompanying the delivery of pCrispr plasmids to E. coli and P. aeruginosa transconjugants bearing CRISPR/Cas9 target sequences. Finally, we determined that anucleate E. coli minicells, which are clinically safer delivery vectors than intact cells, transferred self-transmissible and mobilizable plasmids to E. coli and P. aeruginosa cells. Minicell-mediated mobilization of pCrispr plasmids to E. coli recipients elicited significant killing of transconjugants, although Nb/Ag pairing did not enhance conjugation frequencies or killing. Together, our findings establish the potential for the deployment of bacteria or minicells as programmed delivery systems for the suppression of targeted bacterial species in infection settings. IMPORTANCE The rapid emergence of drug-resistant bacteria and current low rate of antibiotic discovery emphasize the urgent need for alternative antibacterial strategies. We engineered Escherichia coli to conjugatively transfer plasmids to specific E. coli and Pseudomonas aeruginosa recipient cells through the surface display of cognate nanobody/antigen (Nb/Ag) pairs. We further engineered mobilizable plasmids to carry CRISPR/Cas9 systems (pCrispr) for the selective killing of recipient cells harboring CRISPR/Cas9 target sequences. In the assembled programmed delivery system (PDS), Nb-displaying E. coli donors with different conjugation systems and mobilizable pCrispr plasmids suppressed the growth of Ag-displaying recipient cells to significantly greater extents than unpaired recipients. We also showed that anucleate minicells armed with conjugation machines and pCrispr plasmids were highly effective in killing E. coli recipients. Together, our findings suggest that bacteria or minicells armed with PDSs may prove highly effective as an adjunct or alternative to antibiotics for antimicrobial intervention.

  5. Suppression of substrate inhibition in phenanthrene-degrading Mycobacterium by co-cultivation with a non-degrading Burkholderia strain Peer-reviewed

    Natsumi Ogawa, Hiromi Kato, Kouhei Kishida, Eikichi Ichihashi, Taichiro Ishige, Hirofumi Yoshikawa, Yuji Nagata, Yoshiyuki Ohtsubo, Masataka Tsuda

    Microbiology 165 (6) 625-637 2019/06/01

    Publisher: Microbiology Society

    DOI: 10.1099/mic.0.000801  

    ISSN: 1350-0872

    eISSN: 1465-2080

  6. Establishment of plasmid vector and allelic exchange mutagenesis systems in a mycobacterial strain that is able to degrade polycyclic aromatic hydrocarbon Peer-reviewed

    Kouhei Kishida, Natsumi Ogawa, Eikichi Ichihashi, Hiromi Kato, Yuji Nagata, Yoshiyuki Ohtsubo, Masataka Tsuda

    Bioscience, Biotechnology, and Biochemistry 82 (7) 1169-1171 2018/07/03

    Publisher: Informa UK Limited

    DOI: 10.1080/09168451.2018.1445522  

    ISSN: 0916-8451

    eISSN: 1347-6947

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    Abstract Plasmid vector and allelic exchange mutagenesis systems were established for the genetic analysis of a phenanthrene-degrading mycobacterial strain, Mycobacterium sp. EPa45. Successful application of these systems revealed the necessity of the EPa45 phdI gene for the degradation of 1-hydroxy-2-naphthoate, which has been proposed to be an intermediate product in the degradation pathway of phenanthrene.

  7. Complete genome sequence of Burkholderia caribensis Bcrs1W (NBRC110739), a strain co-residing with phenanthrene degrader Mycobacterium sp. EPa45 Peer-reviewed

    Yoshiyuki Ohtsubo, Shouta Nonoyama, Natsumi Ogawa, Hiromi Kato, Yuji Nagata, Masataka Tsuda

    Journal of Biotechnology 228 67-68 2016/06

    Publisher: Elsevier BV

    DOI: 10.1016/j.jbiotec.2016.04.042  

    ISSN: 0168-1656

  8. Complete Genome Sequence of a Phenanthrene Degrader, Burkholderia sp. HB-1 (NBRC 110738) Peer-reviewed

    Yoshiyuki Ohtsubo, Azusa Moriya, Hiromi Kato, Natsumi Ogawa, Yuji Nagata, Masataka Tsuda

    Genome Announcements 3 (6) 2015/12/31

    Publisher: American Society for Microbiology

    DOI: 10.1128/genomea.01283-15  

    eISSN: 2169-8287

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    ABSTRACT The phenanthrene-degrading Burkholderia sp. HB-1 was isolated from a phenanthrene-enrichment culture seeded with a pristine farm soil sample. We report the complete genome sequence of HB-1, which has been deposited to the stock culture (NBRC 110738) at Biological Resource Center, National Institute of Technology and Evaluation (NITE), Tokyo, Japan. The genome of strain HB-1 comprises two circular chromosomes of 4.1 Mb and 3.1 Mb. The finishing was facilitated by the computational tools GenoFinisher, AceFileViewer, and ShortReadManager.

  9. Complete Genome Sequence of a Phenanthrene Degrader, Mycobacterium sp. Strain EPa45 (NBRC 110737), Isolated from a Phenanthrene-Degrading Consortium Peer-reviewed

    Hiromi Kato, Natsumi Ogawa, Yoshiyuki Ohtsubo, Kenshiro Oshima, Atsushi Toyoda, Hiroshi Mori, Yuji Nagata, Ken Kurokawa, Masahira Hattori, Asao Fujiyama, Masataka Tsuda

    Genome Announcements 3 (4) 2015/08/27

    Publisher: American Society for Microbiology

    DOI: 10.1128/genomea.00782-15  

    eISSN: 2169-8287

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    ABSTRACT A phenanthrene degrader, Mycobacterium sp. EPa45, was isolated from a phenanthrene-degrading consortium. Here, we report the complete genome sequence of EPa45, which has a 6.2-Mb single circular chromosome. We propose a phenanthrene degradation pathway in EPa45 based on the complete genome sequence.

  10. A new aldehyde oxidase catalyzing the conversion of glycolaldehyde to glycolate from Burkholderia sp. AIU 129 Peer-reviewed

    Miwa Yamada, Keika Adachi, Natsumi Ogawa, Shigenobu Kishino, Jun Ogawa, Michihiko Kataoka, Sakayu Shimizu, Kimiyasu Isobe

    Journal of Bioscience and Bioengineering 119 (4) 410-415 2015/04

    Publisher: Elsevier BV

    DOI: 10.1016/j.jbiosc.2014.09.005  

    ISSN: 1389-1723

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Misc. 9

  1. Hitchhiking phenomenon in which Paenibacillus sp.NK-L2 transports an organochlorine pesticide-degrading bacterial strain

    松添華子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024

    ISSN: 2186-7976

  2. Formation of an organochlorine insecticide-degrading bacterial community by Sphingobium-Cupriavidus strains

    XIONG Zhiyu, 平野翔子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024

    ISSN: 2186-7976

  3. Reconstruction of an organochlorine insecticide-degrading bacterial community

    手塚隆博, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    日本農芸化学会大会講演要旨集(Web) 2024 2024

    ISSN: 2186-7976

  4. 非移動性の環境汚染物質分解細菌株が移動性細菌株により運ばれるヒッチハイク現象

    松添華子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024

  5. γ-HCH分解性Sphingobium属株と非分解性Cupriavidus属株のコミュニティ形成

    ZHIYU Xiong, 平野翔子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024

  6. 環境汚染物質分解細菌に対するヘルパー効果の強化:新規な細胞間接着ツールの開発

    岸田なつみ, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024

  7. 単離細菌株を用いた有機塩素系殺虫剤分解細菌コミュニティの構成原理の解明

    手塚隆博, 加藤広海, 岸田康平, 大坪嘉行, 岸田なつみ, 永田裕二

    環境バイオテクノロジー学会大会プログラム講演要旨集 2024 2024

  8. Interaction of Key Player and Audience in Pollutants-Degrading Consortia

    加藤広海, 小川なつみ, 津田雅孝, 永田裕二

    Journal of Environmental Biotechnology (Web) 18 (1) 2018

    ISSN: 2436-5041

  9. Community analysis of soil microbiome based on metagenomic information Peer-reviewed

    KATO Hiromi, OGAWA Natsumi, TSUDA Masataka

    Japanese Society of Microbial Ecology 30 (2) 57-64 2015

    Publisher: Japanese Society of Microbial Ecology

    DOI: 10.20709/jsmeja.30.2_57  

    eISSN: 2424-1989

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Presentations 29

  1. 有機塩素系殺虫剤分解細菌集団の構成原理をゲノム情報から探る

    岸田 なつみ, 手塚 隆博, 加藤 広海, Stari Leonardo, 岸田 康平, 大坪 嘉行, 永田 裕二

    第19回日本ゲノム微生物学会 2025/03/19

  2. Elucidation of the principles of the γ-HCH-degrading bacterial community formation through the reconstruction of the community using isolated bacterial strains

    2025/03/08

  3. Hitchhiking phenomenon in which Paenibacillus sp.NK-L2 transports an organochlorine pesticide-degrading bacterial strain

  4. Formation of giant mixed colonies consisting of γ-HCH-degrading Sphingobium and non-degrading Cupriavidus strains

  5. Isolation and characterization of bacterial strains involved in the phenanthrene degradation as a community

    2025/03/05

  6. 環境汚染物質分解細菌に対するヘルパー効果の強化: 新規な細胞間接着ツールの開発

    岸田 なつみ, 岸田 康平, 大坪 嘉行, 永田 裕二

    環境バイオテクノロジー学会2024年度大会 2024/05/30

  7. 単離細菌株を用いた有機塩素系殺虫剤分解細菌コミュニティの構成原理の解明

    手塚隆博, 加藤広海, 岸田康平, 大坪嘉行, 岸田なつみ, 永田裕二

    2024/05/30

  8. γ-HCH分解性Sphingobium属株と非分解性Cupriavidus属株のコミュニティ形成

    Xiong Zhiyu, 平野翔子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会2024年度大会 2024/05/30

  9. 非移動性の環境汚染物質分解細菌株が移動性細菌株により運ばれるヒッチハイク現象

    松添華子, 岸田なつみ, 加藤広海, 岸田康平, 大坪嘉行, 永田裕二

    環境バイオテクノロジー学会2024年度大会 2024/05/30

  10. Reconstruction of an organochlorine insecticide-degrading bacterial community

    2024/03

  11. Formation of an organochlorine insecticide-degrading bacterial community by Sphingobium-Cupriavidus strains

    2024/03

  12. Hitchhiking phenomenon in which Paenibacillus sp.NK-L2 transports an organochlorine pesticide-degrading bacterial strain

    2024/03

  13. 五酸化二窒素(N2O5)の曝露がスイートバジル(Ocimum basilicum L.)の二次代謝物産生に与える促進効果

    岸田なつみ, 立石莉英, 藤井伸治, 永田裕二, 大坪嘉行, 佐々木渉太, 高島圭介, 金子俊郎, 東谷篤志

    東北プラズマフォーラム

  14. Mycobacterium sp. EPa45株におけるフェナントレン分解関連遺伝子群の転写解析

    市橋永吉、小川なつみ、加藤広海、岸田康平、野々山翔太、永田裕二、大坪嘉行、津田雅孝

    第13回日本ゲノム微生物学会年会 2019/03

  15. フェナントレン分解細菌Mycobacterium sp. EPa45株の生育阻害因子の解析

    堀川慧太, 池内倫子, 小川なつみ, 加藤広海, 大坪嘉行, 永田裕二, 津田雅孝

    第13回日本ゲノム微生物学会年会 2019/03

  16. フェナントレン分解Mycobacterium株の遺伝子破壊系構築とビフェニル分解への転写応答

    市橋永吉, 小川なつみ, 岸田康平, 加藤広海, 永田裕二, 大坪嘉行, 津田雅孝

    第12回日本ゲノム微生物学会年会 2018/03

  17. 難分解性芳香族化合物分解コンソーシアム由来の分解細菌Mycobacterium sp. EPa45株における生育阻害機構

    小川なつみ, 加藤広海, 岸田康平, 市橋永吉, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会2018年度大会 2018/03

  18. フェナントレン分解細菌Mycobacterium sp. EPa45株のフェナントレンに対する応答

    小川なつみ, 石毛太一郎, 加藤広海, 大坪嘉行, 永田裕二, 吉川博文, 津田雅孝

    第11回日本ゲノム微生物学会年会 2017/03

  19. フェナントレン分解細菌の生育阻害緩和に対する非分解細菌の生細胞の重要性

    小川なつみ, 加藤広海, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会2017年度大会 2017/03

  20. フェナントレン分解細菌Burkholderia sp. HB-1株のゲノム決定と芳香族化合物分解遺伝子の解析

    守屋梓, 小川なつみ, 加藤広海, 大坪嘉行, 永田裕二, 津田雅孝

    第10回日本ゲノム微生物学会年会 2016/03

  21. フェナントレン分解コンソーシアムMixEPa4における構成細菌間の相互作用

    守屋梓, 小川なつみ, 加藤広海, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会2016年度大会 2016/03

  22. 遺伝学的解析を用いたフェナントレン分解菌と非分解菌の共在機構の解明

    小川なつみ, 守屋梓, 加藤広海, 大坪嘉行, 永田裕二, 津田雅孝

    第10回日本ゲノム微生物学会年会 2016/03

  23. 芳香族分解コンソーシアムに存在する非分解菌の分解菌に対する効果

    小川なつみ, 守屋梓, 加藤広海, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会2016年度大会 2016/03

  24. 芳香族化合物分解コンソーシアムに存在する分解菌と非分解菌の関係

    小川なつみ, 加藤広海, 大坪嘉行, 永田裕二, 津田雅孝

    第9回日本ゲノム微生物学会 2015/03

  25. フェナントレン分解細菌と共存する非分解優占種細菌の機能解明

    小川なつみ, 加藤広海, 大坪嘉行, 永田裕二, 津田雅孝

    環境微生物系学会合同大会2014 2014/10

  26. Mycobacterium属細菌のフェナントレン分解能に対する非分解菌の効果

    小川なつみ, 加藤広海, 遠藤諒, 大坪嘉行, 永田裕二, 津田雅孝

    第8回日本ゲノム微生物学会年会 2014/03

  27. フェナントレン分解コンソーシアムにおける非分解優占種細菌の役割

    小川なつみ, 加藤広海, 遠藤諒, 大坪嘉行, 永田裕二, 津田雅孝

    日本農芸化学会2014年度大会 2014/03

  28. Burkholderia sp. AIU 129が産生するグリコールアルデヒドに作用するアルデヒド酸化酵素

    小川なつみ, 三坂裕一, 高橋瑞希, 山田美和, 小川 順, 片岡道彦, 清水 昌, 礒部公安

    日本農芸化学会2013年度大会 2013/03

  29. A new aldehyde oxidase catalyzing conversion of glycolaldehyde to glycolate from Burkholderia sp. AIU 129.

    Miwa Yamada, Keika Adachi, Natsumi Ogawa, Shigenobu Kishino, Jun Ogawa, Michihiko Kataoka, Sakayu Shimizu, and Kimiyasu Isobe

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Research Projects 1

  1. Advancing Bioremediation Utilizing Cell-Cell Adhesion Enhancement Systems

    Offer Organization: Japan Society for the Promotion of Science

    System: Grants-in-Aid for Scientific Research

    Category: Grant-in-Aid for JSPS Fellows

    Institution: Tohoku University

    2024/04/01 - 2027/03/31